954 resultados para SWELLING


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This study investigated the effects of seawater pH (i.e., 8.10, 7.85 and 7.60) and temperature (16 and 19 °C) on (a) the abiotic conditions in the fluid surrounding the embryo (viz. the perivitelline fluid), (b) growth, development and (c) cuttlebone calcification of embryonic and juvenile stages of the cephalopod Sepia officinalis. Egg swelling increased in response to acidification or warming, leading to an increase in egg surface while the interactive effects suggested a limited plasticity of the swelling modulation. Embryos experienced elevated pCO2 conditions in the perivitelline fluid (>3-fold higher pCO2 than that of ambient seawater), rendering the medium under-saturated even under ambient conditions. The growth of both embryos and juveniles was unaffected by pH, whereas 45Ca incorporation in cuttlebone increased significantly with decreasing pH at both temperatures. This phenomenon of hypercalcification is limited to only a number of animals but does not guarantee functional performance and calls for better mechanistic understanding of calcification processes.

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Both the olivine-hearing tholeiite basalts of the island and the brown soils which have developed on the basalts contain 2-20% of a swelling clay mineral. It emerges from chemical, optical, X-ray diffraction and differential thermal analytical studies that this clay mineral is a Mg-rich, Fe2+ and AI-bearing tri-octahedral smectite, e. g. Mg-saponite. Due to petrographic and crystal chemical properties the saponite should have been formed by hydrothermal alteration of the primary Mg-Fe-minerals olivine and clinopyroxene. The soils consist of plagioclase, saponite and goethite which has been formed by chemical weathering within the soils. In the uppermost layer some of the soils contain humic substances and phosphatic material, the latter may be related to the recent production of guano.

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INTRODUCTION Daptomycin is a cyclic lipopeptide antibiotic, frequently administered for Staphylococcus aureus bloodstream infections. Numerous studies have shown that daptomycin is relatively safe and well tolerated. Serious adverse events possibly related to this antimicrobial compound are rare. We report a case of acute angioedema triggered by daptomycin. CASE REPORT A 60-year-old woman with S. aureus bacteremia without identified source was treated intravenously with high-dose beta-lactams at our institution. Because S. aureus bacteremia persisted on day 6, and in parallel, acute kidney injury developed, antimicrobial treatment was switched to a combination therapy with daptomycin and ceftriaxone. Shortly after completion of the first daptomycin administration, the patient developed lip and tongue swelling and dyspnea. Acute angioedema was clinically evident. Antibiotic therapy was switched to vancomycin, and the further clinical course was favorable. An intradermal test showed a significant wheal diameter for daptomycin, but negative results for ceftriaxone. CONCLUSION The association with daptomycin in this case is either probable or certain. Clinicians should be aware that daptomycin can cause immediate-type hypersensitivity reactions, including acute angioedema, even upon first administration.

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Despite more than two decades of transition from a centrally planned to a market-oriented economy, Myanmar’s economic transition is still only partly complete. The government’s initial strategy for dealing with the swelling deficits of the state economic enterprises (SEEs) was to put them under direct control in order to scrutinize their expenditures. This policy change postponed restructuring and exacerbated the soft budget constraint problem of the SEEs. While the installation of a new government in March 2011 has increased prospects for economic development, sustainable growth still requires full-scale structural reform of the SEEs and institutional infrastructure building. Myanmar can learn from the gradual approaches to economic transition in China and Vietnam, where partial reforms weakened further impetus for reforms.

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The elastic strain/stress fields (halo) around a compressed amorphous nano-track (core) caused by a single high-energy ion impact on LiNbO3 are calculated. A method is developed to approximately account for the effects of crystal anisotropy of LiNbO3 (symmetry 3m) on the stress fields for tracks oriented along the crystal axes (X, Y or Z). It only considers the zero-order (axial) harmonic contribution to the displacement field in the perpendicular plane and uses effective Poisson moduli for each particular orientation. The anisotropy is relatively small; however, it accounts for some differential features obtained for irradiations along the crystallographic axes X, Y and Z. In particular, the irradiation-induced disorder (including halo) and the associated surface swelling appear to be higher for irradiations along the X- or Y-axis in comparison with those along the Z-axis. Other irradiation effects can be explained by the model, e.g. fracture patterns or the morphology of pores after chemical etching of tracks. Moreover, it offers interesting predictions on the effect of irradiation on lattice parameters

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Finding adequate materials to withstand the demanding conditions in the future fusion and fission reactors is a real challenge in the development of these technologies. Structural materials need to sustain high irradiation doses and temperatures that will change the microstructure over time. A better understanding of the changes produced by the irradiation will allow for a better choice of materials, ensuring a safer and reliable future power plants. High-Cr ferritic/martensitic steels head the list of structural materials due to their high resistance to swelling and corrosion. However, it is well known that these alloys present a problem of embrittlement, which could be caused by the presence of defects created by irradiation as these defects act as obstacles for dislocation motion. Therefore, the mechanical response of these materials will depend on the type of defects created during irradiation. In this work, we address a study of the effect Cr concentration has on single interstitial defect formation energies in FeCr alloys.

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The European HiPER project aims to demonstrate commercial viability of inertial fusion energy within the following two decades. This goal requires an extensive Research &Development program on materials for different applications (e.g., first wall, structural components and final optics). In this paper we will discuss our activities in the framework of HiPER to develop materials studies for the different areas of interest. The chamber first wall will have to withstand explosions of at least 100 MJ at a repetition rate of 5-10 Hz. If direct drive targets are used, a dry wall chamber operated in vacuum is preferable. In this situation the major threat for the wall stems from ions. For reasonably low chamber radius (5-10 m) new materials based on W and C are being investigated, e.g., engineered surfaces and nanostructured materials. Structural materials will be subject to high fluxes of neutrons leading to deleterious effects, such as, swelling. Low activation advanced steels as well as new nanostructured materials are being investigated. The final optics lenses will not survive the extreme ion irradiation pulses originated in the explosions. Therefore, mitigation strategies are being investigated. In addition, efforts are being carried out in understanding optimized conditions to minimize the loss of optical properties by neutron and gamma irradiation

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Dry-wall laser inertial fusion (LIF) chambers will have to withstand strong bursts of fast charged particles which will deposit tens of kJ m−2 and implant more than 1018 particles m−2 in a few microseconds at a repetition rate of some Hz. Large chamber dimensions and resistant plasma-facing materials must be combined to guarantee the chamber performance as long as possible under the expected threats: heating, fatigue, cracking, formation of defects, retention of light species, swelling and erosion. Current and novel radiation resistant materials for the first wall need to be validated under realistic conditions. However, at present there is a lack of facilities which can reproduce such ion environments. This contribution proposes the use of ultra-intense lasers and high-intense pulsed ion beams (HIPIB) to recreate the plasma conditions in LIF reactors. By target normal sheath acceleration, ultra-intense lasers can generate very short and energetic ion pulses with a spectral distribution similar to that of the inertial fusion ion bursts, suitable to validate fusion materials and to investigate the barely known propagation of those bursts through background plasmas/gases present in the reactor chamber. HIPIB technologies, initially developed for inertial fusion driver systems, provide huge intensity pulses which meet the irradiation conditions expected in the first wall of LIF chambers and thus can be used for the validation of materials too.

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Dry-wall laser inertial fusion (LIF) chambers will have to withstand strong bursts of fast charged particles which will deposit tens of kJ m−2 and implant more than 1018 particles m−2 in a few microseconds at a repetition rate of some Hz. Large chamber dimensions and resistant plasma-facing materials must be combined to guarantee the chamber performance as long as possible under the expected threats: heating, fatigue, cracking, formation of defects, retention of light species, swelling and erosion. Current and novel radiation resistant materials for the first wall need to be validated under realistic conditions. However, at present there is a lack of facilities which can reproduce such ion environments. This contribution proposes the use of ultra-intense lasers and high-intense pulsed ion beams (HIPIB) to recreate the plasma conditions in LIF reactors. By target normal sheath acceleration, ultra-intense lasers can generate very short and energetic ion pulses with a spectral distribution similar to that of the inertial fusion ion bursts, suitable to validate fusion materials and to investigate the barely known propagation of those bursts through background plasmas/gases present in the reactor chamber. HIPIB technologies, initially developed for inertial fusion driver systems, provide huge intensity pulses which meet the irradiation conditions expected in the first wall of LIF chambers and thus can be used for the validation of materials too.

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Fe–Cr based alloys are the leading structural material candidates in the design of next generation reactors due to their high resistance to swelling and corrosion. Despite these good properties there are others, such as embrittlement, which require a higher level of understanding in order to improve aspects such as safety or lifetime of the reactors. The addition of Cr improves the behavior of the steels under irradiation, but not in a monotonic way. Therefore, understanding the changes in the Fe–Cr based alloys microstructure induced by irradiation and the role played by the alloying element (Cr) is needed in order to predict the response of these materials under the extreme conditions they are going to support. In this work we perform a study of the effect of Cr concentration in a bcc Fe–Cr matrix on formation and binding energies of vacancy clusters up to 5 units. The dependence of the calculated formation and binding energy is investigated with two empirical interatomic potentials specially developed to study radiation damage in Fe–Cr alloys. Results are very similar for both potentials showing an increase of the defect stability with the cluster size and no real dependence on Cr concentration for the binding energy.

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Helium retention in irradiated tungsten leads to swelling, pore formation, sample exfoliation and embrittlement with deleterious consequences in many applications. In particular, the use of tungsten in future nuclear fusion plants is proposed due to its good refractory properties. However, serious concerns about tungsten survivability stems from the fact that it must withstand severe irradiation conditions. In magnetic fusion as well as in inertial fusion (particularly with direct drive targets), tungsten components will be exposed to low and high energy ion (helium) irradiation, respectively. A common feature is that the most detrimental situations will take place in pulsed mode, i.e., high flux irradiation. There is increasing evidence on a correlation between a high helium flux and an enhancement of detrimental effects on tungsten. Nevertheless, the nature of these effects is not well understood due to the subtleties imposed by the exact temperature profile evolution, ion energy, pulse duration, existence of impurities and simultaneous irradiation with other species. Physically based Kinetic Monte Carlo is the technique of choice to simulate the evolution of radiation-induced damage inside solids in large temporal and space scales. We have used the recently developed code MMonCa (Modular Monte Carlo simulator), presented in this conference for the first time, to study He retention (and in general defect evolution) in tungsten samples irradiated with high intensity helium pulses. The code simulates the interactions among a large variety of defects and impurities (He and C) during the irradiation stage and the subsequent annealing steps. In addition, it allows us to vary the sample temperature to follow the severe thermo-mechanical effects of the pulses. In this work we will describe the helium kinetics for different irradiation conditions. A competition is established between fast helium cluster migration and trapping at large defects, being the temperature a determinant factor. In fact, high temperatures (induced by the pulses) are responsible for large vacancy cluster formation and subsequent additional trapping with respect to low flux irradiation.

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Helium retention in irradiated tungsten leads to swelling, pore formation, sample exfoliation and embrittlement with deleterious consequences in many applications. In particular, the use of tungsten in future nuclear fusion plants is proposed due to its good refractory properties. However, serious concerns about tungsten survivability stems from the fact that it must withstand severe irradiation conditions. In magnetic fusion as well as in inertial fusion (particularly with direct drive targets), tungsten components will be exposed to low and high energy ion irradiation (helium), respectively. A common feature is that the most detrimental situations will take place in pulsed mode, i.e., high flux irradiation. There is increasing evidence of a correlation between a high helium flux and an enhancement of detrimental effects on tungsten. Nevertheless, the nature of these effects is not well understood due to the subtleties imposed by the exact temperature profile evolution, ion energy, pulse duration, existence of impurities and simultaneous irradiation with other species. Object Kinetic Monte Carlo is the technique of choice to simulate the evolution of radiation-induced damage inside solids in large temporal and space scales. We have used the recently developed code MMonCa (Modular Monte Carlo simulator), presented at COSIRES 2012 for the first time, to study He retention (and in general defect evolution) in tungsten samples irradiated with high intensity helium pulses. The code simulates the interactions among a large variety of defects and during the irradiation stage and the subsequent annealing steps. The results show that the pulsed mode leads to significantly higher He retention at temperatures higher than 700 K. In this paper we discuss the process of He retention in terms of trap evolution. In addition, we discuss the implications of these findings for inertial fusion.

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Este proyecto tiene por objeto definir el diseño y ejecución de voladuras-tipo, que han sido llevadas a cabo en la mina Aguablanca (Badajoz),tanto de contorno como de producción. El diseño teórico de los diferentes parámetros (malla, consumo específico y cantidad de explosivo) necesarios para la ejecución de las voladuras se han llevado a cabo siguiendo la metodología de diferentes manuales sobre perforación y voladura y han sido ajustados a las necesidades reales del proyecto con el fin de mejorar los resultados de fragmentación, desplazamiento, esponjamiento y proyecciones de las voladuras. Los resultados obtenidos inicialmente en los cálculos teóricos de diseño de los distintos tipos de voladura no conducían a resultados óptimos. Para optimizar los resultados se han tenido que modificar algunos de los parámetros anteriormente mencionados. El Técnico debe tener capacidad para aplicar variaciones día a día que permitan mejorar los resultados obtenidos inicialmente en el cálculo teórico. ABSTRACT The project shows the design and implementation of contour and production blasts in the Mine Aguablanca (Badajoz, Spain). The explosive initial design of the blasts, including drilling pattern, powder factor and explosive charging pattern has been done following well known drilling and blasting calculations methods. As the initial theoretical values can lead to non-optimal results, the blast design has been modified by trial and error tests to achieve the desire rock fragmentation, swelling and minimize fly rocks. A good Blasting Technician must be able to adapt and modify, every day if needed, theoretical methodologies in order to cover the mining production necessitie.

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The Chinchón Saint Claire Convent is a Count Foundation of 1653. Some repair works were made around 1965, but some important cracks were remained. This paper describes the soil study made to know, its properties, the reason of these movements and its consequences to the convent and the repair works done. A high swelling phenomenon has been detected. The convent is on a high plasticity clayey soil with soil sandy insertions. The soil water has a high content of sulphates. In addition, some sewer system piping was broken around the convent and frequently flooded the convent crypt. A micropiles underpinning was made and the water leaked has lead to the sewer system to avoid the crypt flooding, also a drainage system has been made and the ground around the church has been paved.

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El presente trabajo de investigación se plantea el estudio del fenómeno de la retracción. El fenómeno de la retracción, al igual que otras propiedades del hormigón, ha sido ampliamente divulgado, pero de un tiempo a esta parte, debido a la aparición de nuevos tipos de hormigones (autocompactantes, de altas resistencias, reciclados, etc.) se ha dejado en un segundo plano. Este segundo plano no significa que haya pasado al olvido, pues en los “nuevos hormigones” se toman los modelos de estimación de los hormigones normales como base para estimar sus propiedades, siendo, por este motivo, muy necesario reflexionar sobre si los modelos que estamos empleando son apropiados o no lo son. Este trabajo pretende, mediante la confección de una base de datos que unifica y amplía la del profesor Bazant, realizar un análisis estadístico de los datos que actualmente tenemos a nuestra disposición, y que conforman un total de 802 ensayos que abarcan desde el fenómeno el entumecimiento hasta la retracción total, pasando por la retracción autógena, con un intervalo de tiempo que abarca desde 1958 hasta 2013. Además, este trabajo realiza una revisión de los siete modelos de cálculo más empleados a la hora de estimar la deformación por retracción, analizándolos minuciosamente y superponiéndolos con los datos reales de la base anteriormente nombrada. Como conclusión, se demuestra que los modelos estudiados estiman razonablemente bien el fenómeno de la retracción, si bien no se llegan a discriminar todas las variables con la precisión esperada, siendo alguno de ellos conservador. En este sentido, se abre la puerta a insistir en un estudio más afinado de la retracción del hormigón, por dos motivos: los actuales modelos sirven de base para la estimación de los anteriormente mencionados nuevos hormigones y porque la introducción y desarrollo de aditivos que sean capaces de disminuir este fenómeno deben asentarse ambos sobre una base más sólida y precisa. Por último, deja la puerta abierta para que otros trabajos de investigación puedan realizarse, bien con la retracción, bien con otras propiedades, como el módulo de deformación, la adquisición de resistencias, etc., pues se adjunta como anexo toda la base completa con más de 20.000 datos que pueden ser de gran utilidad. The main objective of this research study is to evaluate the phenomenon of shrinkage in concrete. The phenomenon of shrinkage, as well as other properties of concrete, has been widely studied, but for a time, and due to the emergence of new types of concrete (self-compacting, high strength, recycled, etc.) it has been left in the background. Having moved to second plane did not mean that it have been abandoned, since in the "new concrete" these properties are calculated using the estimation models developed for conventional concrete, and it is for this reason, why it is important and necessary to reflect whether these models we are using are appropriate or are not. This work seeks to unify and bring up-to-date a database of experimental shrinkage results. The database is based on existing databases, especially on the last version of the database created by Professor Bazant. The database includes a total of 802 experimental results, and include results for total shrinkage, autogenous shrinkage and swelling, and over experimental studies for 1958 to 2013. The database serves as a basis for a complex and detailed statistical analysis of the data. In addition, seven commonly used shrinkage estimation models are presented and evaluated. These models are used for a thoroughly comparison analysis between the estimated results obtained using these models and the actual experimental data included in the unified database. In conclusion, it is shown that the models estimate reasonably well the shrinkage strains, although they fail to discriminate adequately some of the influencing variables, resulting in some of them being too conservative in their estimation. In this sense, the results of this work emphasis the importance and the need of addition research on the shrinkage of concrete. This is especially important considering that the existing models provide a basis for estimating the shrinkage in "new concretes", and that the increase use of shrinkage reducing additives should be based and supported by solid research in this field. Finally, this study includes an extensive and updated database that can serve for further research on shrinkage. The full database, developed as part of this work, which includes more than 20,000 data, is included in the annex of the study.